[0001] The present invention relates to an electronic device for selecting and controlling
the steering modes of vehicles, in particular industrial vehicles with four steering
wheels.
[0002] It is known that the four steering wheels of an industrial vehicle can be positioned
in various ways, by the operator, in order to align them according to three main modes
of vehicle steering: normal or road steering, the mode known as "at pilgrim step"
or "coordinated" and the mode known as "crab".
[0003] An electronic device according to the preamble of claim 1 is known from EP 0 300
774-A.
[0004] The compulsory condition for correct operation of switching from one mode to the
other lies in the fact that the axles of the wheels must always be synchronised, meaning
that the two centres of gravity of each axle must remain aligned along a direction
perpendicular to the axle.
[0005] Therefore, at present, in order to change the steering mode, the operator must turn
the steering wheel until identifying first the centre of the steered axle of the rear
wheels and then switch to normal to centre the front wheels so that the centres of
the two steered axles, rear and front respectively, are aligned along a direction
perpendicular to the axles; only after this alignment operation, it is possible to
switch to a desired steering mode.
[0006] Therefore, operations to identify and align the centres of each steering axle are
performed, in the known way, by means of pilot lights, each of them flashing when
the condition of synchronisation of each axle is complied with.
[0007] Thus, in order to change the steering mode, at present, the operator firstly must
turn the steering wheel until a first pilot light of the instrument panel is on to
indicate that the axle of the rear wheels is synchronised and then said operator must
switch the steering mode of the wheels to the desired mode, by means of a switch or
selector, also positioned on the instrument panel.
[0008] After the steering cylinder of the rear wheels has been locked, the operator must
then turn the steering wheel again until reaching a position in which a second pilot
light of the instrument panel, which identifies the position of synchronisation of
the axle of the front wheels, is on; then it is possible to switch to another steering
mode by using the selector.
[0009] It is evident that this procedure to vary the steering mode, although relatively
simple to be performed by the operator of an industrial vehicle, however, requires
extremely lengthy execution times, especially in the event that variations of the
steering mode are particularly frequent (due, for example, to frequent variations
in the structure of the ground or to the variety of routes to be taken by the vehicle).
[0010] Moreover, if there is an oil leak in the hydraulic distribution circuit or a blow-by
from one chamber to the other of a steering cylinder, this causes loss of synchronism
and alignment between the steering axles, which can no longer be retrieved except
by performing a new alignment operation.
[0011] Lastly, the correct operation of these systems, in order to vary the steering mode,
is closely dependent on the type of control and the manoeuvring ability of the operator,
with consequent risks of erroneous steering geometries.
[0012] The object of the present invention is, therefore, to remedy the above inconveniences
and, in particular, to indicate an electronic device for selecting and controlling
the steering modes of vehicles, in particular industrial vehicles with four steering
wheels, which permits all possible switchings from one steering mode to the other
of the front and/or rear wheels of a vehicle to be performed automatically and in
relatively short times, compared to the prior art.
[0013] Another object of the present invention is to indicate an electronic device for selecting
and controlling the steering modes of industrial vehicles with four steering wheels,
which permits easy and rapid retrieval of the synchronism between the front and rear
axles, once said synchronism has been lost due to errors by the operator, malfunctions
or leaks in the hydraulic distribution circuit.
[0014] A further object of the invention is to produce an electronic device for selecting
and controlling the steering modes of industrial vehicles with four steering wheels,
simple to use, even by operators who are not particularly skilled in traditional manoeuvres
to synchronise the steering axles.
[0015] These and other objects are obtained by an electronic device for selecting and controlling
the steering modes of vehicles, in particular industrial vehicles with four steering
wheels, according to claim 1.
[0016] Other characteristics of the device can be deduced in the subsequent claims.
[0017] Advantageously, the electronic device according to the invention allows the operator
to switch, automatically and by means of simple selection operations, to a desired
steering mode, from any initial steering mode.
[0018] Moreover, switching to the steering mode requested takes place when the pairs of
wheels mounted on the front and rear steering axles are perfectly synchronised.
[0019] The characteristics of the invention shall become more obvious in the following description
and in the annexed drawings, which refer to a preferred embodiment of the invention.
In the alleged figures:
- figure 1 shows a hydraulic and electric circuit of a distribution circuit, able to
communicate the steerings modes of industrial vehicles and which is controlled by
an electronic device for selection and control, according to the present invention;
- figure 2 shows an electronic circuit of the selection and control device according
to the present invention;
- figures 3-5 show three graphs relative to a series of logic signals which are sent
to the electronic control device, according to the present invention;
- figure 6 shows a block diagram relative to the functioning of the electronic device,
according to the present invention.
[0020] With particular reference to figure 1, 10 schematically indicates a power steering
box ("orbitrol") of an axle with two steering wheels of an industrial vehicle.
[0021] Upstream the power steering 10, a hydraulic pump 12 and a discharge tank 13, connected
to the hydraulic distribution lines 16, 18 respectively, are provided, while 20, 22
indicate two pistons and 24, 26 indicate the steering cylinders of one of the pairs
of wheels of the vehicle (front or rear).
[0022] The reference number 28 indicates a slide valve 28A, 28B, 28C distributor that allows
for a switching of the programmed steering modes, thanks to the electric signals S1,
S2, which are transmitted by the electronic control unit 30, and which control the
solenoid valves 42, 40; two further signals S3 and S4 respectively, are transmitted
to the control unit 30 by two magnetic alignment sensors 34, 36 (for example, of the
Hall effect type), positioned at the centre of each steering cylinder 24, 26, when
a magnetic band, 32, 38, which is respectively provided onto each piston 20, 22, is
in front of a respective sensor 34, 36.
[0023] In order to automatically synchronise the four steering wheels of the industrial
vehicle in the three steering modes: (normal, that is to say with only front steering
wheels, at "pilgrim step", that is to say with front and rear wheels which steer in
two oblique lines or at "crab step", that is to say with the front and the rear wheels,
which steer, two by two, in two parallel directions), it is first necessary to align
the rear wheels in relation to a central point of the respective steering axle, then
lock the steering cylinders of the rear wheels and lastly align the front wheels,
so that the central point of the steering axle of the front wheels is positioned by
an imaginary axis, which is perpendicular to the axle of the rear wheels and passing
through its central point.
[0024] In a preferred embodiment of the present invention, the front of the electronic control
unit 30 is provided with three push-buttons 44 relative to the steering modes, while
a first series of pilot lights indicate the selection in use and a second series of
pilot lights indicate the activation of the magnetic sensors 34, 36 of the front and
rear axles when the respective magnetic band 32, 38 is in front of a respective sensor
34, 36.
[0025] Finally, it is possible to provide another pilot light to indicate a condition of
manual alignment and a screen, indicated with 46, able to visualize the instructions
given by the user and the functions performed by the electronic device.
[0026] The operation of the electronic device according to this invention is essentially
as follows.
[0027] As clearly illustrated in the block diagram of figure 6, regardless of the steering
mode set on the vehicle at a certain moment, in order to switch to the desired steering
mode, the operator selects a push-button relevant to the steering mode requested and
turns the steering wheel of the vehicle, in order to synchronise the wheels by aligning
the central points of the two steering axles.
[0028] Then, when the points are aligned, an automatic switching to the steering mode requested
is performed and the operator releases the push-button.
[0029] If the sensor relative to the front wheels is not activated, a subsequent action
to straighten the wheels permits its activation.
[0030] Normally, the activation of the rear sensor causes the rear cylinder to lock in the
centre, while the activation of the front sensor causes a switching to the new steering
mode; however, if the front sensor is not activated, switching is not enabled and
therefore the operator can once again straighten the front wheels, so that switching
is obtained when the steering direction of the wheels passes through the centre.
[0031] In this way, the simple loss of synchronism of the wheels, which can occur for various
reasons (leaks in the hydraulic circuit, tampering, circuit malfunctions), is retrieved
by performing a further action to straighten the wheels until the central points of
the axles are again aligned.
[0032] Moreover, when the alignment operation is performed, the pilot light 144 of the steering
mode requested flashes, while the pilot light 144 relevant to the previous selection
is constantly on; only after synchronisation has occurred, the pilot light 144 of
the selected steering mode is constantly on, while the pilot light 144 relevant to
the previous steering mode is off.
[0033] As the synchronisation and switching operation requires a certain amount of time,
during which the push-button of the requested mode must be pressed and held, if the
push-button is released before the electronic device has terminated the operation,
the three pilot lights 144 that indicate the steering mode flash simultaneously, indicating
an incorrect operation and, therefore, the alignment operation must be repeated.
[0034] The last selected function is always memorized, even when the control unit 30 is
switched off.
[0035] With particular reference to figure 2, which shows a diagram of the electronic circuit
used in the device according to this invention, 52 indicates a programmable read only
memory, of the EEPROM type, to which the signals S3, S4, received from the sensors
36, 34 respectively, and the signals received from the selectors 56, 58, 60 of the
distributor 28, are fed.
[0036] The programmable memory 52 controls the switching relays R1, R2 respectively, the
operation pilot lights 144 in the different steering modes, the pilot light 62 for
manual alignment of the axles, the pilot lights 64, 66 to enable alignment of the
front wheels and the rear wheels and the solenoid valves 40, 42, by means of the switches
R3, R4, along which the signals S2, S1 run respectively.
[0037] With reference to the figures 3-5, the logic signals S1, S2, S3, S4 and a signal
CA, which enables a selection automatism of the suitable steering mode, are sketched.
[0038] As shown in figure 3, during switching from a "crab" type mode to a "pilgrim step"
type mode, when the logic signal S3 of the magnetic sensor 36 is high (level 1), the
signals S1, S2 are low (level 0) and the switching of the logic signal S4, from low
to high, which is received from the magnetic sensor 34, enables the automatism.
[0039] Figure 4 shows the signals of figure 3, in case the switching of the steering modes
occurs between a "pilgrim step" type mode and a "crab" type mode.
[0040] Moreover, figure 5 shows the signals S1, S2, S3, S4, CA during switching from the
normal or road mode to "pilgrim step" type mode. In this case, the switching from
0 to 1 of the logic signal relative to the sensors 34, 36 enables the automatism to
vary the steering mode and the logic signal S2 enables the solenoid valve 40.
[0041] Finally, by using the electronic device according to the present invention, it is
also possible to switch from automatic operation, as described above, to manual operation,
according to the traditional operation of a device to vary the steering mode of the
known type.
[0042] In order to switch from an automatic control to a manual control of an operation
of axles alignment, the push-buttons 44 relative to the normal or road mode and to
the "pilgrim step" mode must be simultaneously pressed and held pressed for about
0.5 seconds; this pressure will cause the manual alignment pilot light 62 to flash.
[0043] Now, to switch from one steering mode to another, the push-button 44 of the steering
mode required must be pressed and held pressed for about 1 second, and subsequently
aligning the rear wheels until the pilot light 66 is on.
[0044] A subsequent switching to an automatic operation is performed once again by pressing
simultaneously the push-buttons 44 relative to the "normal" or road steering mode
and to the "pilgrim step" steering mode for about 0.5 seconds; in this case the pilot
light 66 is off and, subsequently, it will be possible to select the steering mode
desired by means of an automatic procedure such as the one described above.
[0045] From the description given the characteristics of the electronic device for selection
and control of the steering modes of vehicles, particularly industrial vehicles with
four steering wheels, according to the present invention, are evident, as are the
advantages.
[0046] In particular, these relate to the following aspects:
- more reliable, more rapid switching and more simple to use, compared with prior art;
- precise and correct operation;
- possibility of switching from an automatic type operation to a traditional manual
type operation;
- low costs, compared with prior art.
1. Electronic device for selecting and controlling the steering modes of vehicles, in
particular industrial vehicles with four steering wheels, of the type used to align
the front and rear wheels of said vehicle, locking in position a steering cylinder
(24, 26) of at least one pair of wheels, said device comprises an electronic control
unit (30), which receives signals (S3, S4) from at least one alignment sensor (36,
34), positioned in line with a piston (20, 22) of at least one steering cylinder (24,
26) of the vehicle, provided with a magnetic band (32, 38), said control unit (30)
controlling with electric signals a plurality of distributor means (28, 28A, 28B,
28C, 40, 42), able to switch from one of said steering modes to another when said
alignment occurs characterised in that said control unit (30) comprises push buttons (44) to switch from an automatic type
operation to a manual type operation of axle alignment, wherein in said automatic
type operation the electronic control unit (30) switches the logic level of the electric
signals (S1,S2) relative to said alignment sensors signals (S3,S4) whereas in said
manual type operations the logic level of the electric signals (S1,S2) are switched
manually by pressing one of said push-buttons (44) while disregarding said alignment
sensor signals (S3,S4).
2. Electronic device as claimed in claim 1, characterised in that said electronic control unit (30) comprises a series of push -buttons (44) relative
to said steering modes, a visualization screen (46) to control functions and a series
of pilot lights (62, 64, 66), which indicate a steering mode in use, activation of
said sensors (34, 36) upon passing of said magnetic bands (32, 38) and conditions
of automatic and manual alignment of the wheels of said vehicle.
3. Electronic device as claimed in claim 1, characterised in that said electronic control unit (30) comprises an electronic programmable memory board
(52), of the EEPROM type, the inputs of which receive the signals (S3, S4) from said
sensors (36, 34) and which emits the control signals to switch from one mode of steering
to another.
4. Electronic device as claimed in claim 1, characterised in that a plurality of pilot lights (144) of the control unit (30) indicate operating faults.
5. Electronic device as claimed in claim 3, characterised in that said programmable memory board (52) memorizes the last steering mode selected, even
if said vehicle is switched off, while when said vehicle is switched on again said
device always requires an alignment operation to be performed.
1. Elektronisches Gerät zur Auswahl und Steuerung der Lenkmoden von Fahrzeugen, insbesondere
Industriefahrzeugen mit vier Lenkrädern, zur Ausrichtung der Vorder- und Hinterräder
des Fahrzeugs, wobei ein Lenkzylinder (24, 26) mindestens eines Radpaares in seiner
Stellung verriegelt wird, mit einer elektronischen Steuereinheit (30), die Signale
(S3, S4) von mindestens einem Ausrichtsensor (36, 34) erhält, der an einem mit einem
Magnetband (32, 38) versehenen Kolben (20, 22) mindestens eines Lenkzylinders (24,
26) des Fahrzeugs angeordnet ist, wobei die Steuereinheit (30) mit elektrischen Signalen
mehrere Verteiler (28, 28A, 28B, 28C, 40, 42) steuert, die dann, wenn die Ausrichtung
vorliegt, von einem der Lenkmoden in einen anderen umschaltbar sind, dadurch gekennzeichnet, daß die Steuereinheit (30) Drucktasten (44) zum Umschalten der Achsenausrichtung von
Automatikbetrieb auf manuellen Betrieb, wobei im Automatikbetrieb die elektronische
Steuereinheit (30) den logischen Pegel der elektrischen Signale (S1, S2) relativ zu
den Ausrichtsensorsignalen (S3, S4) umschaltet, während im manuellen Betrieb der logische
Pegel der elektrischen Signale (S1, S2) manuell durch Niederdrücken der Drucktasten
(44) ohne Berücksichtigung der Ausrichtsensorsignale (S3, S4) umgeschaltet wird.
2. Elektronisches Gerät nach Anspruch 1, dadurch gekennzeichnet, daß die elektronische Steuereinheit (30) eine Reihe von auf die Lenkmoden bezogenen Drucktasten
(44), ein Display (46) zur Funktionssteuerung und eine Reihe von Anzeigelampen (62,
64, 66) aufweist, die den gerade benutzten Lenkmodus, die Betätigung der Sensoren
(34, 36) beim Passieren der Magnetbänder (32, 38) und den Zustand der automatischen
und manuellen Ausrichtung der Fahrzeugräder anzeigen.
3. Elektronisches Gerät nach Anspruch 1, dadurch gekennzeichnet, daß die elektronische Steuereinheit (30) einen elektronischen programmierbaren Speicher
(52) des Typs EEPROM aufweist, an dessen Eingängen die Signale (S3, S4) der Sensoren
(36, 34) liegen und der die Steuersignale zum Umschalten von einem Lenkmodus auf einen
anderen abgibt.
4. Elektronisches Gerät nach Anspruch 1, dadurch gekennzeichnet, daß mehrere Anzeigelampen (144) der Steuereinheit (30) Betriebsfehler anzeigen.
5. Elektronisches Gerät nach Anspruch 3, dadurch gekennzeichnet, daß der programmierbare Speicher (52) den letzten ausgewählten Lenkmodus auch im abgeschalteten
Zustand des Fahrzeugs speichert, während das Gerät beim Wiedereinschalten des Fahrzeugs
immer einen Ausrichtvorgang erfordert.
1. Dispositif électronique pour sélectionner et contrôler les modes de direction des
véhicules, en particulier des véhicules industriels avec quatre roues motrices, du
type utilisé pour aligner les roues avant et arrière dudit véhicule, en bloquant en
position le cylindre de direction (24, 26) d'au moins une paire de roues, ledit dispositif
comprend une unité de commande électronique (30), qui reçoit des signaux (S3, S4)
provenant d'au moins un capteur d'alignement (36, 34), positionné en ligne avec un
piston (20, 22) d'au moins un cylindre de direction (24, 26) du véhicule, muni d'une
bande magnétique (32, 38), ladite unité de commande (30) commandant avec des signaux
électriques une pluralité de moyens distributeurs (28, 28A, 28B, 28C, 40, 42), capables
de commuter d'un desdits modes de direction à un autre quand ledit alignement se produit,
caractérisé en ce que ladite unité de commande électronique (30) comprend des boutons-poussoirs (44) pour
commuter d'un fonctionnement de type automatique à un fonctionnement de type manuel
de l'alignement d'essieux, où dans ledit fonctionnement de type automatique, l'unité
de commande électronique (30) commute le niveau logique des signaux électriques (S1,
S2) par rapport auxdits signaux de capteurs d'alignement (S3, S4), alors que dans
ledit fonctionnement de type manuel, les niveaux logiques des signaux électriques
(S1, S2) sont commutés manuellement en actionnant un desdits boutons-poussoirs (44)
tout en ne tenant aucun compte desdits signaux de capteurs d'alignement (S3, S4).
2. Dispositif électronique selon la revendication 1, caractérisé en ce que ladite unité de commande électronique (30) comprend une série de boutons-poussoirs
(44) relatifs auxdits modes de direction, un écran de visualisation (46) pour contrôler
des fonctions et une série de voyants lumineux (62, 64, 66), qui indiquent un mode
de direction en cours d'utilisation, une activation desdits capteurs (34, 36) lors
du passage desdites bandes magnétiques (32, 38) et des conditions d'alignement automatique
et manuel des roues dudit véhicule.
3. Dispositif électronique selon la revendication 1, caractérisé en ce que ladite unité de commande électronique (30) comprend une carte mémoire programmable
électronique (52), du type EEPROM, dont les entrées reçoivent les signaux (S3, S4)
provenant desdits capteurs (36, 34) et qui émet les signaux de commande pour commuter
d'un mode de direction à un autre.
4. Dispositif électronique selon la revendication 1, caractérisé en ce qu'une pluralité de voyants lumineux (144) de l'unité de commande (30) indique des défauts
de fonctionnement.
5. Dispositif électronique selon la revendication 3, caractérisé en ce que ladite carte de mémoire programmable (52) mémorise le dernier mode de direction sélectionné,
même si ledit véhicule est mis hors tension, alors que, quand le véhicule est remis
sous tension, ledit dispositif nécessite toujours qu'une opération d'alignement soit
effectuée.